1.Behavioral characterization of olfactory, auditory, and motor deficits in 5×FAD mice
Hyewon JANG ; Sueun LEE ; Yeongjun KIM ; Jeongmin LEE ; Jong-Choon KIM ; Joong-Sun KIM ; Jong-Hwan PARK ; Jinwook KIM ; Yeonghoon SON ; Changjong MOON
Journal of Veterinary Science 2026;27(3):e35-
Objective:
To characterize age-related motor, olfactory, and auditory changes in 5×FAD mice and assess associated AD pathologies and neuroinflammation in relevant brain regions.
Methods:
5×FAD and control mice were tested at 3, 6, and 12 months. Locomotor activity and motor coordination were assessed using the open field and rotarod tests, respectively. Olfactory and auditory performance were evaluated using the buried food test and the acoustic startle response test, respectively. Amyloid-β pathology and glial activation were examined in relevant nervous system components using western blot and immunohistochemistry analyses.
Results:
5×FAD mice showed no differences in open-field locomotion at any age, but exhibited a significantly greater passive clinging duration at 12 months compared to wild-type controls (p < 0.001). In the buried food test, olfactory latency was significantly prolonged in 5×FAD mice at 6 months (p = 0.035) and 12 months (p < 0.001). Acoustic startle amplitude was significantly reduced at 6 months (p = 0.030) and 12 months (p = 0.007). Amyloid-β and p-Tau accumulation and glial activation were elevated in the olfactory bulb and auditory cortex in an age-dependent manner.
Conclusions
and Relevance: This study provides an age-related behavioral and pathological characterization of olfactory and auditory impairments in the 5×FAD mouse model, with motor measures included as complementary assessments. Our findings broaden the spectrum of functional deficits associated with the AD pathology in this model.
2.Elevated osteopontin reflects systemic inflammation in experimental autoimmune encephalomyelitis
Sungmoo HONG ; Kyungsook JUNG ; Taeyoung KANG ; Meejung AHN ; Changjong MOON ; Jeongtae KIM ; Taekyun SHIN
Anatomy & Cell Biology 2025;58(4):615-623
We examined the expression and localization of osteopontin (OPN) in various organs in mice with experimental autoimmune encephalomyelitis (EAE). To evaluate the level of OPN in blood and various tissues, enzyme-linked immunosorbent assay and western blot analysis of OPN were performed. The serum level of OPN was significantly increased in mice with EAE, and OPN was upregulated in all tissues examined, including the liver, kidneys, intestines, and spinal cord.OPN immunoreactivity was noted in inflammatory cells (mainly macrophages) and was enhanced in constitutively expressed cell types in the examined organs. In sum, OPN, a pro-inflammatory and immunomodulatory mediator, was elevated in all tissues following EAE induction, resulting in increased blood concentrations. These findings suggest that OPN may function as a key extracellular matrix component contributing to systemic disorders in autoimmune disease models.
3.Histomorphometric analysis of the small intestine in Philippine Darag native chickens compared to slow-growing commercial broilers
Roxanne JUAREZ ; Mark Joseph DESAMERO ; Veneranda MAGPANTAY ; Herald Nygel BAUTISTA ; Sohi KANG ; Joong-Sun KIM ; Mary Jasmin ANG ; Changjong MOON
Korean Journal of Veterinary Research 2025;65(4):e29-
The Philippine Darag native chicken demonstrates favorable health and welfare indicators that are comparable to those of slow-growing Redbro broiler chickens. This study analyzed the histomorphometric characteristics of the small intestinal segments in these 2 breeds over an 8-week growth period. Small intestinal samples were collected weekly from both breeds from week 1 to week 8. Tissues were fixed and stained with hematoxylin and eosin, and analysis was performed using ImageJ to quantify villus height (VH), crypt depth (CD), villus-to-crypt ratio, epithelial thickness (ET), mucosal thickness (MT), and tunica muscularis thickness. The effects of age and breed, as well as their correlations with body weight, relative organ weight, and total feed consumption, were evaluated using a mixed-effects model, Pearson’s correlation, and multiple linear regression. Additionally, a binomial logistic regression model was applied to examine the occurrence of zigzag villi patterns. All histomorphometric parameters exhibited a significant increase with age. Redbro displayed earlier and more rapid intestinal development, whereas Darag demonstrated slower yet more comprehensive maturation across parameters. The zigzag villi pattern emerged earlier in Redbro, particularly in the jejunum. The identified age- and breed-specific differences in small intestinal development suggest that intestinal adaptation may contribute to variations in growth performance and may indicate potential advantages to Darag in low-input production systems. Furthermore, the significant correlations of VH, CD, ET, and MT with production indices indicate that growth performance is influenced by a complex interaction of absorptive capacity, intestinal health, and motility, rather than solely by villus surface area.
4.Comparative analysis of ERK and CREB activity in normal and cryptorchid testes of bulls
Changjin YUN ; Sohee JEONG ; Yongbin CHO ; Sang-Ik PARK ; In Sik SHIN ; Jun-Gyu PARK ; Changjong MOON ; Sohi KANG ; Joong-Sun KIM
Journal of Veterinary Science 2025;26(6):e83-
Objective:
This study aimed to examine morphological changes and changes in the extracellular signal-regulated kinase (ERK) and cyclic AMP response element-binding protein (CREB) activity in the testes of bulls with cryptorchidism.
Methods:
Testes from the 18-month-old unilateral cryptorchid bulls, including the descended (normal) and undescended (cryptorchid) testes from each animal, were analyzed through gross examination, histology, immunohistochemistry (Ki-67, phosphorylated p-ERK, p-CREB), and Western blotting.
Results:
Cryptorchid testes were smaller and exhibited reduced epithelial thickness, although seminiferous tubule area remained unchanged. Expression of Ki-67, p-ERK, and p-CREB was significantly decreased, indicating impaired cell proliferation and signaling.Total ERK and CREB protein levels were unchanged, but phosphorylation levels were notably reduced in cryptorchid samples.
Conclusions
and Relevance: Our findings demonstrate that cryptorchidism alters testicular morphology and disrupts key signaling pathways, particularly those involved in cell growth and function. Such alterations may contribute to infertility and highlight the importance of early diagnosis and intervention in the context of reproductive management in livestock.
5.Patents trends analysis of microbiome-based treatment technology for neurological disorders in pets
Byung-Suk JEON ; Huiyeong JEONG ; Sohee JEONG ; Changjong MOON ; Jong-Hwan PARK ; Sung-Ho KIM ; Joong-Sun KIM
Journal of Biomedical and Translational Research 2024;25(2):33-39
This study was conducted to collect the patents of microbiome-based treatment technology for pets. An electronic search for microbiome or probiotics in brain nervous system disease was studied using the WINTELIPS database. Patent Cooperation Treaty of Korea, Japan, the EU, the US, and China that were registered by October 31, 2022 were selected in this study.A total of 206 patents were included for final analysis. Since 2016, patent activity has shown an explosive increase in recent years. China is the leading market in this technology field, and Korea has the second-highest market share. To provide the groundwork for the next research and development, we examined the industrial trend of microbiome for brain nervous system diseases in this study using an analysis of patents that have been applied for andregistered up to this point. Looking at the overall patent trends by year in the technology field related to treating of brain and nervous system diseases using the microbiome, there was a tendency to repeat increasing and decreasing trends. However, considering 2021 and 2022, which have undisclosed sections, it can be seen that patent activity has tended to increase explosively in recent years, starting in 2016. If related studies use the patent analysis data constructed in this way strategically, it is expected that it will lead to patent registration and the development of new products, ultimately contributing to the revitalization of the companion animal industry.
6.Histopathological evaluation of the Pathology lungs in experimental autoimmune encephalomyelitis
Sungmoo HONG ; Jeongtae KIM ; Kyungsook JUNG ; Meejung AHN ; Changjong MOON ; Yoshihiro NOMURA ; Hiroshi MATSUDA ; Akane TANAKA ; Hyohoon JEONG ; Taekyun SHIN
Journal of Veterinary Science 2024;25(3):e35-
Objective:
This study evaluated the inflammatory response in lungs of EAE mice by immunohistochemistry and histochemistry.
Methods:
Eight adult C57BL/6 mice were injected with myelin oligodendrocyte glycoprotein 35-55 to induce the EAE. Lungs and spinal cords were sampled from the experimental mice at the time of sacrifice and used for the western blotting, histochemistry, and immunohistochemistry.
Results:
Histopathological examination revealed inflammatory lesions in the lungs of EAE mice, characterized by infiltration of myeloperoxidase (MPO)- and galectin-3-positive cells, as determined by immunohistochemistry. Increased numbers of collagen fibers in the lungs of EAE mice were confirmed by histopathological analysis. Western blotting revealed significantly elevated level of osteopontin (OPN), cluster of differentiation 44 (CD44), MPO and galectin-3 in the lungs of EAE mice compared with normal controls (p < 0.05).Immunohistochemical analysis revealed both OPN and CD44 in ionized calcium-binding adapter molecule 1-positive macrophages within the lungs of EAE mice.
Conclusions
and Relevance: Taken together, these findings suggest that the increased OPN level in lungs of EAE mice led to inflammation; concurrent increases in proinflammatory factors (OPN and galectin-3) caused pulmonary impairment.
7.Lectin histochemistry in the small intestines of piglets naturally infected with porcine epidemic diarrhea virus
Bohye KIM ; Sungwoong JANG ; Hyewon JANG ; Joong-Sun KIM ; Tae-Il JEON ; Jun-Gyu PARK ; In-Sik SHIN ; Kyoung-Oh CHO ; Changjong MOON
Journal of Veterinary Science 2024;25(5):e66-
Objective:
This work aimed to examine the alterations in glycoconjugates in the small intestines of piglets naturally infected with PEDV using lectin histochemistry.
Methods:
Six piglets including three PEDV-infected and three non-infected piglets were evaluated. Small intestinal samples were histopathologically examined, and lectin histochemistry was performed.
Results:
Piglets infected with PEDV had significant histological abnormalities in their small intestines, such as pronounced villous atrophy, varying degrees of villous fusion, and diverse mucosal alterations. Specific regions of the duodenum, jejunum, and ileum showed discernible variations in glycoconjugate distribution, as determined by lectin histochemistry.Compared with the controls, the PEDV-infected piglets showed significant changes in N-acetylglucosamine- and galactose-binding lectins (particularly wheat germ agglutinin and Arachis hypogaea (peanut) agglutinin) in multiple intestinal regions.
Conclusions
and Relevance: These findings can enhance understanding of how viruses such as PEDV impact the glycoconjugate composition of the small intestines and emphasize the potential connection between the pathogenesis of PEDV and glycoconjugate.
8.Blood-retina barrier dysfunction in experimental autoimmune uveitis: the pathogenesis and therapeutic targets
Jeongtae KIM ; Jiyoon CHUN ; Meejung AHN ; Kyungsook JUNG ; Changjong MOON ; Taekyun SHIN
Anatomy & Cell Biology 2022;55(1):20-27
Experimental autoimmune uveitis (EAU), an animal model of human uveitis, is characterized by infiltration of autoimmune T cells in the uvea as well as in the retina of susceptible animals. EAU is induced by the immunization of uveitogenic antigens, including either retinal soluble-antigen or interphotoreceptor retinoid-binding proteins, in Lewis rats. The pathogenesis of EAU in rats involves the proliferation of autoimmune T cells in peripheral lymphoid tissues and breakdown of the blood-retinal barrier, primarily in the uvea and retina, finally inducing visual dysfunction. In this review, we describe recent EAU studies to facilitate the design of a therapeutic strategy through the interruption of uveitogenic factors during the course of EAU, which will be helpful for controlling human uveitis.
9.Enhancing the Effect of Placental Extract on the Regeneration of Crush Injured Facial Nerve
Gyeong Min LIM ; Gwang-Won CHO ; Chitra Devi GANESAN ; Ji Hyun CHOI ; Mary Jasmin ANG ; Changjong MOON ; Chul Ho JANG
Experimental Neurobiology 2022;31(6):419-430
There is a scarcity of experimental studies on peripheral nerve regeneration using placental extract (PE). This study aimed to investigate the effects of topical PE application on recovery after crush injury to the rat facial nerve using functional, electrophysiological, and morphological evaluations. The viability of the RSC96 Schwann cells treated with PE (0.5~4 mg/ml) increased significantly. Immunoblot test revealed that PE application enhanced the migration of RSC96 cells. Quantitative polymerase chain reaction demonstrated that PE increased the expression of neurotropic genes. The recovery from vibrissa fibrillation in the PE-treated group was superior to that in the control group. The threshold of action potential was also significantly lower in the PE group. Histopathological examination showed that crushed facial nerves treated with PE exhibited larger axons. The surrounding myelin sheaths were more distinct and thicker in the PE-treated group. Hence, PE may be considered a topical therapeutic agent for treating traumatic facial nerve paralysis.
10.Changes in the Neuronal Architecture of the Hippocampus in a 6-Hydroxydopamine-Lesioned Rat Model of Parkinson Disease
Bohye KIM ; Poornima D. E. WEERASINGHE-MUDIYANSELAGE ; Mary Jasmin ANG ; Jeongmin LEE ; Sohi KANG ; Jong-Choon KIM ; Sung-Ho KIM ; Joong-Sun KIM ; Chaeyong JUNG ; Taekyun SHIN ; Changjong MOON
International Neurourology Journal 2022;26(Suppl 2):S94-105
Purpose:
Parkinson disease (PD) is a progressive neurodegenerative disorder in which dopaminergic (DAergic) systems are destroyed (particularly in the nigrostriatal system), causing both motor and nonmotor symptoms. Hippocampal neuroplasticity is altered in PD animal models, resulting in nonmotor dysfunctions. However, little is known about the precise mechanism underlying the hippocampal dysfunctions in PD.
Methods:
Striatal 6-hydroxydopamine (6-OHDA) infusions were performed unilaterally in adult Sprague Dawley rats. Both motor and nonmotor symptoms alongside the expression of tyrosine hydroxylase (TH) in the substantia nigra and striatum were confirmed in 6-OHDA-lesioned rats. The neuronal architecture in the hippocampus was analyzed by Golgi staining.
Results:
During the 7–8 weeks after infusion, the 6-OHDA-lesioned rats exhibited motor and nonmotor dysfunctions (especially anxiety/depression-like behaviors). Rats with unilateral 6-OHDA infusion displayed reduced TH+ immunoreactivity in the ipsilateral nigrostriatal pathway of the brain. Golgi staining revealed that striatal 6-OHDA infusion significantly decreased the dendritic complexity (i.e., number of crossing dendrites, total dendritic length, and branch points) in the ipsilateral hippocampal conus ammonis 1 (CA1) apical/basal and dentate gyrus (DG) subregions. Additionally, the dendritic spine density and morphology were significantly altered in the CA1 apical/basal and DG subregions following striatal 6-OHDA infusion. However, alteration of microglial and astrocytic distributions did not occur in the hippocampus following striatal 6-OHDA infusion.
Conclusions
The present study provides anatomical evidence that the structural plasticity in the hippocampus is altered in the late phase following striatal 6-OHDA infusion in rats, possibly as a result of the prolonged suppression of the DAergic system, and independent of neuroinflammation.

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